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12篇 您的检索式:作者名="Delignieres"
    题名 作者 年代 出处 被引量
1A psychometric tool for the as- sessment of the dynamics of the physical self显示文摘Ninot G Fortes M Delignieres D 2001European Journal of Applied Psychology2001,,51:1
2On discontinue- ities in motor learning: a longitudinal study of complex skill acquisi- tion on a ski-simulator显示文摘NOURRIT D DELIGNIERES D CAILLOU N 2003Journal of motor behaviour2003,35,2:1
3Effect of physical exercise duration on decisional perforrnance显示文摘ARCELIN R BRISSWALTER J DELIGNIERES D 1997J Human Move Studies1997,32,3:1
4Familial and non-familial benign infantile seizures:A homogeneous entity显示文摘Bourel-Ponchel E Le Moing AG Delignieres A 0,,:1
5Correlation properties of(Discrete)fractional Gaussian noise and fractional brownian motion显示文摘DELIGNIERES D 2015Mathematical Problems Engineering2015,10,8:1
6Detection of long-range de- pendence and estimation of fractal exponents through ARFIMA modeling 显示文摘Torre K Delignieres D Lemoine L 2007British Journal of Mathematical and Statistical Psychology2007,60,:1
7De novo gain-of- function KCNT1 channel mutations cause malignant migrating par- tial seizures of infancy显示文摘Barcia G Fleming M R Deligniere A 2012Nat Genet2012,44,11:1
8Detection of Long-range Dependence and Estimation of Fractal Exponents through ARFIMA Modelling显示文摘Torre K Delignieres D Lemoine L 2007British Journal of Mathematical and Statistical Psychology2007,60,1:1
9Strong anticipation and long-range cross-correlation: Application of detrended cross- correlation analysis to human behavioral data 显示文摘Didier Delignieres Vivien Marmelat 2014Physica A: Statistical Mechanics and its Applications2014,57,394:1
10Fractal analyses for ' short' time series : A re - assessment of classical methods 显示文摘Delignieres D R Sofiane L Loic 2006Journal of Mathematical Psychology2006,50,:1
11A psychophysical study of difficulty rating in rock climbing显示文摘Delignieres D Famose J P Th6paut - Mathieu C 1993International Journal of Sport Psychology1993,24,:1
12Selective Pb^(2+) removal and electrochemical regeneration of fresh and recycled FeOOH显示文摘Heavy metal pollution is a key environmental problem.Selectively extracting heavy metals could accomplish water purification and resource recycling simultaneously.Adsorption is a promising approach with a facile process,adaptability for the broad concentration of feed water,and high selectivity.However,the adsorption method faces challenges in synthesizing highperformance sorbents and regenerating adsorbents effectively.FeOOH is an environmentally friendly sorbent with low-cost production on a large scale.Nevertheless,the selectivity behavior and regeneration of FeOOH are seldom studied.Therefore,we investigated the selectivity of FeOOH in a mixed solution of Co^(2+),Ni^(2+),and Pb^(2+)and proposed to enhance the capacity of FeOOH and regenerate it by using external charges.Without charge,the FeOOH electrode shows a Pb^(2+)uptake capacity of 20 mg/g.After applying a voltage of-0.2/+0.8 V,the uptake capacity increases to a maximum of 42 mg/g and the desorption ratio is 70%-80%.In 35 cycles,FeOOH shows a superior selectivity towards Pb^(2+)compared with Co^(2+)and Ni^(2+),with a purity of 97%±3%in the extracts.The high selectivity is attributed to the lower activation energy for Pb^(2+)sorption.The capacity retentions at the 5^(th)and the 35^(th)cycles are ca.80%and ca.50%,respectively,comparable to the chemical regeneration method.With industrially exhausted granular ferric hydroxide as the electrode material,the system exhibits a Pb^(2+)uptake capacity of 37.4 mg/g with high selectivity.Our work demonstrates the feasibility of regenerating FeOOH by charge and provides a new approach for recycling and upcycling FeOOH sorbent.Lei Wang Lexane Deligniere Samantha Husmann Regina Leiner Carsten Bahr Shengjie Zhang Chaochao Dun Matthew M.Montemore Markus Gallei Jeffrey J.Urban Choonsoo Kim Volker Presser 2023Nano Research2023,16,7:0
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